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通过自动荧光显微镜对转铁蛋白循环进行定量分析。

Quantitative analysis of transferrin cycling by automated fluorescence microscopy.

作者信息

Hirschmann David T, Kasper Christoph A, Spiess Martin

机构信息

Biozentrum, University of Basel, Klingelbergstrasse 70, Basel, CH-4056, Switzerland.

出版信息

Methods Mol Biol. 2015;1270:365-78. doi: 10.1007/978-1-4939-2309-0_25.

Abstract

Surface receptors are transported between the plasma membrane and intracellular compartments by various endocytic mechanisms and by recycling via different pathways from sorting or recycling endosomes. The analysis of cellular components involved in mediating or regulating these transport steps is of high current interest and requires quantitative methods to determine rates of endocytosis and/or recycling. Various biochemical procedures to measure uptake of labeled ligand molecules or internalization and reappearance of surface-labeled receptors have been developed. Here, we describe a quantitative method based on fluorescence microscopy of adherent cells taking advantage of the transferrin (Tf) receptor as the prototype of cycling transport receptors. Tf is endocytosed with bound Fe(3+) and, upon release of the iron ion in endosomes, recycled as apo-Tf together with the receptor. To follow the ligand-receptor complex, fluorescently labeled Tf is used and detected microscopically with or without releasing Tf from cell surface receptors by acid stripping. To go beyond the observation of a few individual cells, automated fluorescence microscopy is employed to image thousands of cells at different time points and in parallel with different treatments (such as chemical inhibitors, siRNA silencing, or transfection of candidate genes) in a 96-well format. Computer-assisted image analysis allows unbiased quantitation of Tf content of each cell and to distinguish between different cell populations.

摘要

表面受体通过各种内吞机制在质膜和细胞内区室之间运输,并通过分选或回收内体经不同途径进行循环。分析参与介导或调节这些运输步骤的细胞成分是当前的研究热点,需要定量方法来确定内吞作用和/或循环的速率。已经开发了各种生化方法来测量标记配体分子的摄取或表面标记受体的内化和再出现。在这里,我们描述了一种基于贴壁细胞荧光显微镜的定量方法,利用转铁蛋白(Tf)受体作为循环运输受体的原型。Tf与结合的Fe(3+)一起被内吞,在内体中铁离子释放后,与受体一起作为脱铁转铁蛋白循环。为了追踪配体-受体复合物,使用荧光标记的Tf,并通过酸剥离从细胞表面受体释放或不释放Tf进行显微镜检测。为了超越对少数单个细胞的观察,采用自动荧光显微镜在96孔板中对数千个细胞在不同时间点进行成像,并与不同处理(如化学抑制剂、siRNA沉默或候选基因转染)并行。计算机辅助图像分析允许对每个细胞的Tf含量进行无偏定量,并区分不同的细胞群体。

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